期刊论文详细信息
PLoS Pathogens
Glycoprotein N of Human Cytomegalovirus Protects the Virus from Neutralizing Antibodies
William Britt1  Jens Nentwich2  Michael Mach2  Juliane Schott2  Tanja Fisch2  Christiane Burkhardt2  Barbara Kropff2 
[1] Department of Pediatrics, University of Alabama Birmingham, Birmingham, Alabama, United States of America;Institut für Klinische und Molekulare Virologie, Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany
关键词: Antibodies;    Enzyme-linked immunoassays;    Herpesviruses;    Virions;    Carbohydrates;    Human cytomegalovirus;    Virus glycoproteins;    Viral envelope;   
DOI  :  10.1371/journal.ppat.1002999
学科分类:生物科学(综合)
来源: Public Library of Science
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【 摘 要 】

Herpes viruses persist in the infected host and are transmitted between hosts in the presence of a fully functional humoral immune response, suggesting that they can evade neutralization by antiviral antibodies. Human cytomegalovirus (HCMV) encodes a number of polymorphic highly glycosylated virion glycoproteins (g), including the essential envelope glycoprotein, gN. We have tested the hypothesis that glycosylation of gN contributes to resistance of the virus to neutralizing antibodies. Recombinant viruses carrying deletions in serine/threonine rich sequences within the glycosylated surface domain of gN were constructed in the genetic background of HCMV strain AD169. The deletions had no influence on the formation of the gM/gN complex and in vitro replication of the respective viruses compared to the parent virus. The gN-truncated viruses were significantly more susceptible to neutralization by a gN-specific monoclonal antibody and in addition by a number of gB- and gH-specific monoclonal antibodies. Sera from individuals previously infected with HCMV also more efficiently neutralized gN-truncated viruses. Immunization of mice with viruses that expressed the truncated forms of gN resulted in significantly higher serum neutralizing antibody titers against the homologous strain that was accompanied by increased antibody titers against known neutralizing epitopes on gB and gH. Importantly, neutralization activity of sera from animals immunized with gN-truncated virus did not exhibit enhanced neutralizing activity against the parental wild type virus carrying the fully glycosylated wild type gN. Our results indicate that the extensive glycosylation of gN could represent a potentially important mechanism by which HCMV neutralization by a number of different antibody reactivities can be inhibited.

【 授权许可】

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